Student Research Committee, Kermanshah University of Medical Sciences, Kermanshah, Iran.
USERN Office, Kermanshah University of Medical Sciences, Kermanshah, Iran.
Biofactors. 2022 Mar;48(2):359-383. doi: 10.1002/biof.1799. Epub 2021 Nov 1.
Anticancer drugs are not purely effective because of their toxicity, side effects, high cost, inaccessibility, and associated resistance. On the other hand, cancer is a complex public health problem that could intelligently adopt different signaling pathways and alter the body's metabolism to escape from the immune system. One of the cancer strategies to metastasize is modifying pH in the tumor microenvironment, ranging between 6.5 and 6.9. As a powerful determiner, lactate is responsible for this acidosis. It is involved in immune stimulation, including innate and adaptive immunity, apoptotic-related factors (Bax/Bcl-2, caspase), and glycolysis pathways (e.g., GLUT-1, PKM2, PFK, HK2, MCT-1, and LDH). Lactate metabolism, in turn, is interconnected with several dysregulated signaling mediators, including PI3K/Akt/mTOR, AMPK, NF-κB, Nrf2, JAK/STAT, and HIF-1α. Because of lactate's emerging and critical role, targeting lactate production and its transporters is important for preventing and managing tumorigenesis. Hence, exploring and developing novel promising anticancer agents to minimize human cancers is urgent. Based on numerous studies, natural secondary metabolites as multi-target alternative compounds with health-promoting properties possess more high effectiveness and low side effects than conventional agents. Besides, the mechanism of multi-targeted natural sources is related to lactate production and cancer-associated cross-talked factors. This review focuses on targeting the lactate metabolism/transporters, and lactate-associated mediators, including glycolytic pathways. Besides, interconnected mediators to lactate metabolism are also targeted by natural products. Accordingly, plant-derived secondary metabolites are introduced as alternative therapies in combating cancer through modulating lactate metabolism and glycolytic pathways.
抗癌药物并非纯粹有效,因为它们具有毒性、副作用、成本高、难以获得以及产生耐药性等问题。另一方面,癌症是一个复杂的公共卫生问题,它可以智能地采用不同的信号通路,并改变身体的新陈代谢,从而逃避免疫系统的攻击。癌症转移的策略之一是改变肿瘤微环境中的 pH 值,范围在 6.5 到 6.9 之间。作为一种强大的决定因素,乳酸负责这种酸中毒。它参与免疫刺激,包括先天和适应性免疫、凋亡相关因素(Bax/Bcl-2、caspase)以及糖酵解途径(例如 GLUT-1、PKM2、PFK、HK2、MCT-1 和 LDH)。反过来,乳酸代谢与几种失调的信号转导介质相互关联,包括 PI3K/Akt/mTOR、AMPK、NF-κB、Nrf2、JAK/STAT 和 HIF-1α。由于乳酸的作用日益凸显且至关重要,因此靶向乳酸的产生及其转运体对于预防和管理肿瘤发生具有重要意义。因此,探索和开发新型有前途的抗癌药物以最小化人类癌症的发生迫在眉睫。基于大量研究,具有促进健康特性的天然次生代谢物作为多靶标替代化合物,比传统药物具有更高的有效性和更低的副作用。此外,多靶点天然来源的作用机制与乳酸的产生和与癌症相关的交叉对话因素有关。本综述重点介绍了靶向乳酸代谢/转运体以及与乳酸相关的介质,包括糖酵解途径。此外,还针对与乳酸代谢相互关联的介质进行了靶向治疗。因此,植物源性次生代谢物被引入作为通过调节乳酸代谢和糖酵解途径来对抗癌症的替代疗法。